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Solubility of benzene in methane + nitrogen mixtures at LNG conditions

Wanying WuMark T.J. BarwoodPeter J. MetaxasPeter E. FalloonEric F. May

2025Chemical Engineering JournalEngineering被引 1开放获取

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摘要

• First-ever solubility data measured for solid benzene freezing out of mixtures of methane and nitrogen. • New data are used to tune the binary interaction parameter for the benzene-nitrogen pair. • Predictions are improved by 67% for SFE and 89% for VLE for the benzene-nitrogen pair. • Accuracy of benzene freeze-out temperature calculations from a methane-nitrogen mixture increased by 2.0 K. Outcomes help avoid benzene freeze-out during liquefaction of nitrogen-containing natural gas. One of the most common non-hydrocarbon components in natural gas, nitrogen, is thought to reduce the solubility of impurities such as benzene in liquefied natural gas. However, no data are available at LNG-relevant conditions to estimate the magnitude of this effect. This work presents optical measurements of the solubility of solid benzene in mixtures of methane and nitrogen using a stirred, high-pressure apparatus. These measurements were undertaken at industrially-relevant concentrations of benzene from (25 to 450) ppm at pressures from (3.8 to 13.5) MPa. The measured data suggest that benzene solids may form at temperatures up to 3.3 K higher than those predicted using the default models in the thermodynamic software package ThermoFAST. The measured data were used to tune the benzene-nitrogen binary interaction parameter, improving the accuracy of the prediction for the benzene-methane–nitrogen ternary system by up to 2.0 K in the solid–liquid equilibrium region. Together, these data and the resulting improvements to the thermodynamic model can help LNG plant operators and engineers avoid the formation of benzene solids from nitrogen-containing natural gas.

引用本文(GB/T 7714)

Wanying Wu, Mark T.J. Barwood, Peter J. Metaxas, 等. Solubility of benzene in methane + nitrogen mixtures at LNG conditions[J]. Chemical Engineering Journal, 2025.

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DOI:https://doi.org/10.1016/j.cej.2025.159804

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